光催化合成胺酮的一般方法。

IF 2.1 4区 化学 Q2 CHEMISTRY, ORGANIC
Beilstein Journal of Organic Chemistry Pub Date : 2025-07-29 eCollection Date: 2025-01-01 DOI:10.3762/bjoc.21.116
Paula Pérez-Ramos, Raquel G Soengas, Humberto Rodríguez-Solla
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引用次数: 0

摘要

胺酮是合成几种衍生物的关键中间体,在药物化学中有着重要的应用。此外,许多上市的药物都具有胺酮结构部分。在这种情况下,我们开发了一种光氧化还原和镍催化系统,通过胺与缺电子烯烃部分的迈克尔反应和随后的光催化脱溴,从3-溴铬酮快速制备出胺酮支架。在这种双催化体系下,一系列结构多样的胺酮衍生物以高收率和全反式选择性得到。机理研究表明,这一过程成功的关键是与3-溴铬酮和吡啶盐形成未开发的三元ni配合物,这是α,β-不饱和体系向亲核加成的有效激活的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

General method for the synthesis of enaminones via photocatalysis.

General method for the synthesis of enaminones via photocatalysis.

General method for the synthesis of enaminones via photocatalysis.

General method for the synthesis of enaminones via photocatalysis.

Enaminones are key intermediates in the synthesis of several derivatives with important applications in medicinal chemistry. Furthermore, many marketed drugs feature the enaminone structural moiety. In this context, we have developed a photoredox and nickel catalytic system to rapidly forge the enaminone scaffold from 3-bromochromones via a Michael reaction of an amine with an electron-deficient alkene moiety and subsequent photocatalyzed debromination. With this dual catalytic system, a range of structurally diverse enaminone derivatives have been achieved in good yields with total trans selectivity. Mechanistic studies indicate that the key to the success of this process is the formation of an unexplored ternary Ni-complex with 3-bromochromone and a pyridinium salt, which is crucial for the effective activation of the α,β-unsaturated system towards the nucleophilic addition.

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来源期刊
CiteScore
4.90
自引率
3.70%
发文量
167
审稿时长
1.4 months
期刊介绍: The Beilstein Journal of Organic Chemistry is an international, peer-reviewed, Open Access journal. It provides a unique platform for rapid publication without any charges (free for author and reader) – Platinum Open Access. The content is freely accessible 365 days a year to any user worldwide. Articles are available online immediately upon publication and are publicly archived in all major repositories. In addition, it provides a platform for publishing thematic issues (theme-based collections of articles) on topical issues in organic chemistry. The journal publishes high quality research and reviews in all areas of organic chemistry, including organic synthesis, organic reactions, natural product chemistry, structural investigations, supramolecular chemistry and chemical biology.
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